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Colony Forming Cell (CFC) Assay for Human Hematopoietic Cells
Published on: December 18, 2010
Effect of the human cytomegalovirus IE86 protein on expression of E2F-responsive genes: a DNA microarray analysis
Yoon-Jae Song1, Mark F Stinski
1Department of Microbiology, College of Medicine, University of Iowa, Iowa City, IA 52242, USA.
Abstract:
We have previously reported that the immediate early (IE)-86 protein of human cytomegalovirus (HCMV) pushes the cell cycle toward S phase but inhibits cell division [Murphy, E. A., Streblow, D. N., Nelson, J. A. & Stinski, M. F. (2000) J. Virol. 74, 7108-7118]. We determined the cellular genes activated by the IE86 protein in permissive human fibroblast cells. A 4-fold or greater increase in the steady-state RNA from many cellular genes that regulate the cell cycle, the enzymes for DNA precursor synthesis, and the initiation of cellular DNA replication was detected by high-density DNA microarray analysis. Northern blot analysis confirmed the DNA microarray data. The viral IE86 protein induced a significant increase in the cellular steady-state RNA level from the B-myb, cyclin E, cdk-2, E2F-1, ribonucleotide reductase 1, ribonucleotide reductase 2, thymidylate synthetase, MCM3, and MCM7 genes, but actin RNA was not affected. Cellular genes regulated by the E2F transcription factors were strongly activated by the IE86 protein. In most cases, the cellular genes induced by the IE86 protein were also induced by HCMV infection. This study demonstrates the global array of cellular genes activated by the IE86 protein that pushes progression of the cell cycle from G0/G1 toward the G1/S transition point.
Insights
The human cytomegalovirus (HCMV) IE86 protein activates cellular genes involved in DNA replication and cell cycle progression. This viral protein drives the cell cycle toward the S phase, promoting DNA synthesis.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Human cytomegalovirus (HCMV) immediate early (IE)-86 protein influences host cell cycle progression.
- Previous studies indicated IE86 promotes S phase entry but inhibits cell division.
Purpose of the Study:
- To identify cellular genes activated by the HCMV IE86 protein.
- To understand the molecular mechanisms by which IE86 manipulates the host cell cycle.
Main Methods:
- High-density DNA microarray analysis to detect changes in steady-state RNA levels.
- Northern blot analysis to confirm microarray findings.
Main Results:
- IE86 significantly increased RNA levels for cell cycle regulators (B-myb, cyclin E, cdk-2, E2F-1) and DNA synthesis enzymes (ribonucleotide reductase 1 & 2, thymidylate synthetase).
- Genes regulated by E2F transcription factors were strongly activated by IE86.
- Actin RNA levels remained unaffected, serving as a control.
Conclusions:
- The HCMV IE86 protein globally activates cellular genes essential for DNA replication and cell cycle progression.
- IE86 drives the cell cycle from G0/G1 toward the G1/S transition point.
- Most IE86-induced cellular genes are also upregulated during HCMV infection.
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